A printer includes a ribbon supply end including a shaft, a ribbon retrieving end, and a ribbon. The two ends of the ribbon are installed on the ribbon supply end and the ribbon retrieving end respectively. The printer further includes a print head, a driving module for driving the ribbon supply end and the ribbon retrieving end so as to move the ribbon from the ribbon supply end to the ribbon retrieving end, a sensing module installed at one side of the ribbon supply end including a first contact sensor, and a second contact sensor installed between the first contact sensor and the ribbon supply end, and a control module for controlling the printer according to whether or not the second contact sensor can contact the shaft of the ribbon supply end when the first contact sensor contacts the ribbon on the ribbon supply end.
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9. A method of controlling a printer, the method comprising the following steps:
(a) providing a first contact sensor, and a second contact sensor installed between the first contact sensor and a ribbon supply end of the printer;
(b) controlling the first contact sensor and the second contact sensor to move towards the ribbon supply end before the printer prints dye on a ribbon onto a print medium; and
(c) controlling the printer when the first contact sensor contacts the ribbon on the ribbon supply end according to whether the second contact sensor contacts a shaft of the ribbon supply end.
22. A method of controlling a printer, the method comprising the following steps:
(a) providing a first contact sensor, and a second contact sensor installed between the first contact sensor and a ribbon retrieving end of the printer;
(b) controlling the first contact sensor and the second contact sensor to move towards the ribbon retrieving end before the printer prints dye on a ribbon onto a print medium; and;
(c) controlling the printer when the second contact sensor contacts the shaft of the ribbon retrieving end according to whether the first contact sensor contacts the ribbon on the ribbon retrieving end.
1. A printer capable of detecting status of unutilized ribbon, the printer comprising:
a ribbon supply end comprising a shaft;
a ribbon retrieving end;
a ribbon wherein two ends are installed on the ribbon supply end and the ribbon retrieving end respectively;
a print head for printing dye on the ribbon onto a print medium;
a driving module for driving the ribbon supply end and the ribbon retrieving end, and to move the ribbon from the ribbon supply end to the ribbon retrieving end;
a sensor module installed at each side of the ribbon supply end comprising a first contact sensor, and a second contact sensor installed between the first contact sensor and the ribbon supply end; and
a control module for controlling the printer when the first contact sensor contacts the ribbon on the ribbon supply end according to whether the second contact sensor contacts the shaft of the ribbon supply end.
14. A printer capable of detecting status of unutilized ribbon, the printer comprising:
a ribbon supply end;
a ribbon retrieving end comprising a shaft;
a ribbon wherein two ends are installed on the ribbon supply end and the ribbon retrieving end respectively;
a print head for printing dye on the ribbon onto a print medium;
a driving module for driving the ribbon supply end and the ribbon retrieving end, and to move the ribbon from the ribbon supply end to the ribbon retrieving end;
a sensor module, installed at each side of the ribbon retrieving end, comprising a first contact sensor, and a second contact sensor installed between the first contact sensor and the ribbon retrieving end; and
a control module for controlling the printer when the second contact sensor contacts the ribbon on the ribbon retrieving end according to whether the first contact sensor contacts the shaft of the ribbon retrieving end.
2. The printer of
3. The printer of
4. The printer of
5. The printer of
a warning interface, coupled to the control module, wherein the control module controls the warning interface to display a warning signal when the second contact sensor contacts the shaft of the ribbon supply end.
7. The printer of
a movable rod for carrying the first contact sensor and the second contact sensor.
10. The method of
11. The method of
12. The method of
13. The method of
15. The printer of
16. The printer of
17. The printer of
18. The printer of
a warning interface, coupled to the control module, wherein the control module controls the warning interface to display a warning signal when the first contact sensor contacts the shaft of the ribbon retrieving end.
20. The printer of
a movable rod for carrying the first contact sensor and the second contact sensor.
23. The method of
24. The method of
25. The method of
26. The method of
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1. Field of the Invention
The present invention relates to a printer capable of detecting status of unutilized ribbon, more particularly, to a printer capable of utilizing a contact sensor to detect the status of unutilized ribbon.
2. Description of the Prior Art
A printer has become an essential output device in our information age. A traditional printer prints data onto a piece of paper or a print medium. As information technology advances, printers nowadays come with a variety of functions. For example, a thermal printer is capable of printing an image directly from a digital camera onto a piece of paper, the advantage is that a user can choose to print a favorite image or photograph and discards the rest. Therefore avoiding waste of resources and money to develop a full roll of traditional negatives to print photographs. The current thermal printer, utilizes a thermal print head to print documents, includes a paper drawer for placing print material such as paper, and an imaging material cassette for placing imaging material such as ink film or ribbon.
The thermal printer and ink jet printer have very similar frameworks, the only difference being that the ink jet printer requires liquid ink whereas the thermal printer utilizes a solid ribbon. Most ink jet printers utilize a half tone printing method; they are unable to print continuous tone of a real life photograph. Hence, the thermal printer that has a continuous tone function is becoming more popular among consumers. The thermal printer utilizes a sublimation technique to apply colors of the transfer ribbon directly onto the paper; the ribbon is a transparent cellular paper that includes dye. During the process of printing, the thermal print head heats up the ribbon's dye. The melted color will be transferred from the ribbon onto the paper. Later when the color on the paper cools a colored image will be displayed.
In general, to ensure that there is sufficient ribbon for the next printout, there is a need to detect if the ribbon is reaching its end. In determining a conventional group of ribbon, a special barcode is added to the ribbon for the optical sensor to differentiate. Please refer to
The claimed invention relates to a printer capable of utilizing a contact sensor to detect status of unutilized ribbon and to solve the problem mentioned above.
One embodiment of the claimed invention is a printer capable of detecting the status of unutilized ribbon, the printer comprising: a ribbon supply end comprising a shaft; a ribbon retrieving end; a ribbon wherein two ends are installed on the ribbon supply end and the ribbon retrieving end respectively; a print head for printing dye on the ribbon onto a print medium; a driving module for driving the ribbon supply end and the ribbon retrieving end, and to move the ribbon from the ribbon supply end to the ribbon retrieving end; a sensor module installed at each side of the ribbon supply end comprising a first contact sensor, and a second contact sensor installed between the first contact sensor and the ribbon supply end; and a control module for controlling the printer when the first contact sensor contacts the ribbon on the ribbon supply end according to whether the second contact sensor can contact the shaft of the ribbon supply end.
One embodiment of the claimed invention is a method of controlling a printer, the method comprising the following steps: providing a first contact sensor, and a second contact sensor installed between the first contact sensor and a ribbon supply end of the printer; controlling the first contact sensor and the second contact sensor to move towards the ribbon supply end before the printer prints dye on a ribbon onto a print medium; and controlling the printer when the first contact sensor contacts the ribbon on the ribbon supply end according to whether the second contact sensor contacts a shaft of the ribbon supply end.
Another embodiment of the claimed invention is a printer capable of detecting the status of unutilized ribbon, the printer comprising: a ribbon supply end; a ribbon retrieving end comprising a shaft; a ribbon wherein two ends are installed on the ribbon supply end and the ribbon retrieving end respectively; a print head for printing dye on the ribbon onto a print medium; a driving module for driving the ribbon supply end and the ribbon retrieving end, and to move the ribbon from the ribbon supply end to the ribbon retrieving end; a sensor module, installed at each side of the ribbon retrieving end, comprising a first contact sensor, and a second contact sensor installed between the first contact sensor and the ribbon retrieving end; and a control module for controlling the printer when the first contact sensor contacts the ribbon on the ribbon retrieving end according to whether the second contact sensor can contact the shaft of the ribbon retrieving end.
Another embodiment of the claimed invention is a method of controlling a printer, the method comprising the following steps: providing a first contact sensor, and a second contact sensor installed between the first contact sensor and a ribbon retrieving end of the printer; controlling the first contact sensor and the second contact sensor to move towards the ribbon retrieving end before the printer prints dye on a ribbon onto a print medium; and controlling the printer when the second contact sensor contacts the shaft of the ribbon retrieving end according to whether the first contact sensor contacts the ribbon on the ribbon retrieving end.
These and other objectives of the present invention will no doubt become obvious to those of ordinary skill in the art after reading the following detailed description of the preferred embodiment that is illustrated in the various figures and drawings.
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The sensor module 60 of the present invention is installed at each side of the ribbon supply end. The label, functions and location will be similar to the above-mentioned, and therefore it will be not further mentioned. Please refer to
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In comparison with the prior art, the printer utilizes a contact sensor to detect unutilized ribbon and to advise the user to replace the ribbon because there is insufficient ribbon to proceed with the next printout. In this way, the printer will not perform a next printout when there is insufficient ribbon therefore a printing error can be avoided. The present invention overcomes the defect of the special barcode when the ribbon reaches a predetermined group number and has to stay within each dye area to be detected according to the prior art, hence the present invention increases the effective utilization of the ribbon, resulting in lower production costs of the ribbon.
Those skilled in the art will readily observe that numerous modifications and alterations of the device and method may be made while retaining the teachings of the invention. Accordingly, the above disclosure should be construed as limited only by the metes and bounds of the appended claims.
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Executed on | Assignor | Assignee | Conveyance | Frame | Reel | Doc |
Feb 25 2005 | HUANG, KUANG-HUEI | HI-TOUCH IMAGING TECHNOLOGIES CO , LTD | ASSIGNMENT OF ASSIGNORS INTEREST SEE DOCUMENT FOR DETAILS | 015741 | /0164 | |
Mar 08 2005 | Hi-Touch Imaging Technologies Co., Ltd. | (assignment on the face of the patent) | / | |||
Dec 26 2007 | HI-TOUCH IMAGING TECHNOLOGIES CO , LTD | HITI DIGITAL, INC | CHANGE OF THE NAME AND ADDRESS OF THE ASSIGNEE | 020299 | /0175 |
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